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Effect of aspect ratios on stress and strain of a multilayer model for the left ventricle

机译:长宽比对左心室多层模型应力和应变的影响

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A basic understanding of the heart behavior assists in the accurate diagnosis of heart disease, which is the leading cause of death in Thailand. The mechanical behaviors of the heart can be ideally explained by strain and stress. This work numerically and analytically described three layers of the heart wall in a computational model, while previous studies only considered the myocardium, which is a muscular layer. Moreover, the shape of the left ventricle (LV) varies among individuals. The influence of the LV shape, as assumed to be a truncated ellipse, was considered by varying the short-to-long-axis and wall-to-cavity-volume ratios to investigate strain and stress in the radial, circumferential and longitudinal directions during a passive filling with blood using a continuum approach. For verification, the model was compared to other research work by defining the wall-to-cavity-volume and short-to-long-axis ratios as well by as fiber distribution. The results showed that an increasing short-to-long-axis ratio obviously resulted in decreased overall strains and stresses. Whereas, increasing the wall-to-cavity-volume ratio slightly decreased radial contraction as well as circumferential and longitudinal expansion. The fiber strains of the linear fiber distribution corresponded well with previous work at a high longitudinal curvature.
机译:对心脏行为的基本了解有助于准确诊断心脏病,这是泰国死亡的主要原因。心脏的机械行为可以理想地通过应变和压力来解释。这项工作在计算模型中以数值和分析方式描述了心脏壁的三层,而以前的研究仅考虑了心肌层,即心肌层。此外,左心室(LV)的形状因人而异。通过改变短轴与长轴以及壁与腔的体积比,研究在径向,圆周和纵向方向上的应变和应力,考虑了LV形状(假定为椭圆形)的影响。使用连续体方法被动填充血液。为了进行验证,该模型通过定义壁与腔的体积和短轴与长轴的比率以及纤维分布与其他研究工作进行了比较。结果表明,短轴长轴比的增加明显导致整体应变和应力的降低。然而,增加孔腔体积比会稍微减小径向收缩以及周向和纵向膨胀。线性纤维分布的纤维应变在高纵向曲率下与先前的工作非常吻合。

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